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Effect of supplemental lighting on water transport, photosynthetic carbon gain and water use efficiency in greenhouse tomato

机译:补充照明对温室番茄水运,光合碳增益和水利用效率的影响

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Despite supplemental lighting is being increasingly applied in greenhouses to improve crop productivity, there have been few studies investigated effects of supplemental lighting on water movement, water consumption and water use efficiency. To examine the potentials to improve water use efficiency via supplemental lighting, photosynthetic productivity versus water movement under contrasting light treatments was investigated in greenhouse tomato (Solanum lycopersieum L.). In the present study, supplemental lighting by light-emitting diodes (LED) facilitated uniform light distributions along vertical profile canopy. The homogeneous light condition increased stomatal and mesophyll conductance for photosynthetic CO2 uptake, especially at the bottom canopy. Consequently, leaf photosynthetic capacity for carbon acquisition and assimilation was overall improved by supplemental lighting. The improvement in leaf photosynthetic capacity was more pronounced with the increased depth down the vertical profile canopy. Both shoot dry biomass and fresh fruit yield were significantly increased by supplemental lighting. Supplemental lighting by LED altered light condition solely and had no significant effect on the distribution of the water driving force along soil-plant-atmospheric continuum, water transport rate and plant water consumption. Taken together, supplemental lighting maximized photosynthetic productivity and consequently significantly increased water use efficiency, whether based of shoot dry biomass and fresh fruit yield, by 10.2% and 8.7%, respectively. Therefore, we concluded that supplemental lighting by LED is an efficient solution to improve greenhouse crop water use efficiency. The present study provides novel information improving water use efficiency without alterning water consumption for sustainable greenhouse production.
机译:尽管辅助照明越来越多地应用于温室以提高作物生产力,但仍有很少的研究调查对水运动,耗水量和水利用效率的影响。为了通过补充照明来检查改善水利用效率的潜力,在温室番茄(Solanum Lycopersieum L.)中研究了对比下光处理的光合生产率与水运动。在本研究中,通过发光二极管(LED)的补充照明沿垂直轮孔覆盖均匀的光分布。均匀的光条件增加了光合作用CO2摄取的气孔和培养的电导,尤其是底部冠层。因此,通过补充照明整体改善了碳获取和同化的叶片光合能力。随着垂直轮廓冠层的增加,叶片光合容量的改善更加明显。通过补充照明,芽干生物质和新鲜水果产量均显着增加。通过LED改变光线条件的补充照明,对土壤 - 植物大气连续体,水运输速率和植物耗水的水驱动力没有显着影响。连合起来,补充光线最大化的光合生产率,从而显着提高了水利用效率,无论是基于芽干生物质和新鲜水果产量,分别为10.2%和8.7%。因此,我们得出结论,LED的补充照明是提高温室作物用水效率的有效解决方案。本研究提供了新颖的信息,提高了水利用效率而不改变可持续温室生产的耗水量。

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